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A Dual Voltage Control Strategy for Single-Phase PWM Converters With Power Decoupling Function

机译:具有功率去耦功能的单相PWM转换器的双电压控制策略

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The inherent double line ripple power in single-phase systems is adverse to the performance of power electronics converters, e.g., limited lifetime due to the requirement of large electrolytic capacitors and low voltage control bandwidth due to harmonic disturbance. In this paper, an active converter topology based on a symmetrical half-bridge circuit is proposed to decouple the ripple power so that balanced instantaneous power flow is assured between source and load, and the required dc-link capacitance can be dramatically reduced. For proper closed-loop regulation, the small signal modeling of the proposed system is presented, and a dual voltage control strategy is then proposed, which comprises one voltage loop implemented in the synchronous reference frame for active power balancing, and another one implemented in the stationary reference frame for ripple power compensation. Special attention is given to the bandwidth of voltage control loops because the variation of dc-link voltage should be kept within an acceptable range during load transients. This is particularly important for systems with reduced dc-link capacitance because they are of lower energy capacity, and the dc-link voltage is therefore very sensitive to step load changes. Comprehensive simulation and experimental results are presented to show the effectiveness of the proposed circuit and control algorithm.
机译:单相系统中固有的双线纹波功率不利于电力电子转换器的性能,例如,由于需要大的电解电容器而导致寿命有限,以及由于谐波干扰而导致的低压控制带宽。本文提出了一种基于对称半桥电路的有源转换器拓扑结构,以对纹波功率进行去耦,从而确保了源与负载之间的瞬时功率平衡,并且可以显着降低所需的直流链路电容。为了进行适当的闭环调节,提出了所提出系统的小信号建模,然后提出了双电压控制策略,该策略包括一个在同步参考系中实现有功功率平衡的电压环路,另一个在该参考系中实现。固定参考框架,用于纹波功率补偿。应特别注意电压控制环路的带宽,因为直流链路电压的变化在负载瞬变期间应保持在可接受的范围内。这对于直流链路电容减小的系统尤其重要,因为它们的能量容量较低,因此直流链路电压对阶跃负载变化非常敏感。综合仿真和实验结果表明了所提出的电路和控制算法的有效性。

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